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Tailored excitation sequences for optimized laser-induced modifications in bulk transparent materials exposed to sub-ps irradiation

机译:量身定制的激发序列,可优化暴露于亚ps辐射的大块透明材料中激光诱导的修饰

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摘要

Tight focusing of ultrashort near infrared laser pulses in the bulk of various transparent materials induces significant modifications of the optical properties by locally changing the material refractive index. Such laser-induced phase objects are of major technological interest, notably for direct writing of embedded optical functions. While extensive studies have been reported on ultrashort pulsed laser-induced modifications in several materials, especially with regard to focusing conditions, incubation effects, or the influence of the energy content of the pulse, we emphasize here the role of the temporal design of the excitation sequence. We present phase-contrast microscopy investigations of the resultant morphology and discuss the refractive index topological map induced by different temporal pulse intensity envelopes in various transparent materials. The consequences of temporal profiles generated by a pulse shaping apparatus on the morphology of the interaction zone are illustrated, emphasizing the benefits of the synchronization between the excitation temporal profile and the material response.
机译:通过局部改变材料的折射率,将超短近红外激光脉冲紧密地聚焦在各种透明材料的主体中,会引起光学性能的显着改变。这种激光诱导的相位对象具有重大的技术意义,特别是对于直接写入嵌入式光学功能。尽管已经报道了对几种材料中超短脉冲激光诱导的修饰的广泛研究,尤其是在聚焦条件,孵化效果或脉冲能量含量的影响方面,但在此我们强调激发的时间设计的作用序列。我们目前所形成的形态的相衬显微镜研究,并讨论了由各种透明材料中的不同时间脉冲强度包络引起的折射率拓扑图。示出了由脉冲整形装置产生的时间轮廓对相互作用区域的形态的影响,强调了激励时间轮廓与材料响应之间的同步的益处。

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